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ΖΑΧΑΡΕΝΙΑ ΚΥΠΡΙΤΙΔΟΥ

Ζαχαρένια Κυπριτίδου | Zacharenia Kypritidou

Ιδιότητα: Εργαστηριακό Διδακτικό Προσωπικό (Ε.ΔΙ.Π.)
  
Τομέας: Οικονομικής Γεωλογίας και Γεωχημείας

Τηλέφωνο: 2107274210
e-mail: zach-kyp@geol.uoa.gr
Προσωπική ιστοσελίδα:


Ερευνητικά Ενδιαφέροντα

Ορυκτολογικός και ορυκτοχημικός χαρακτηρισμός των ορυκτών πρώτων υλών, η σχέση των ορυκτών υλών και των παραπροϊόντων τους με το περιβάλλον, μοντελοποίηση των γεωχημεικών διεργασιών επιφανείας

Συνεπικουρία Διδακτικού Έργου

Προπτυχιακό Πρόγραμμα Σπουδών

  • Μέθοδοι Ανάλυσης Μεταλλευμάτων-Ρευστά Εγκλείσματα
  • Ορυκτές Πρώτες Ύλες και Περιβάλλον
  • Γεωχημεία
  • Περιβαλλοντική Γεωχημεία
  • Βιομηχανικά Ορυκτά και Πετρώματα

Ενδεικτικές Δημοσιεύσεις

Kypritidou, Z., Doulgeris, C., Tziritis, E., Kinigopoulou, V., Jellali, S., Jeguirim, M., 2022. Geochemical Modelling of Inorganic Nutrients Leaching from an Agricultural Soil Amended with Olive-Mill Waste Biochar. Agronomy 12, 480. doi.orghttps://doi.org/10.3390/agronomy12020480

Kypritidou, Z., Kourgia, P.-M., Argyraki, A., Demetriades, A., 2021. Do humans take good care of their offspring as animals do…! The Lavreotiki and Lavrion “sagas”, Hellenic Republic—Part 1: Historical outline and mapping of lead contamination. 2Environmental Geochemistry Heal. doi.orghttps://doi.org/10.1007/s10653-021-01080-0

Kourgia, P.-M., Kypritidou, Z., Argyraki, A., Demetriades, A., 2022. Do humans take good care of their offspring as animals do…! the Lavreotiki and Lavrion ‘sagas’, Hellenic Republic–Part 2: hazard and risk assessment and remediation. 2Environmental Geochemistry Heal. doi.orghttps://doi.org/10.1007/s10653-021-01158-9

Kelepertzis, E., Chrastny, V., Botsou, F., Sigala, E., Kypritidou, Z., Komarek, M., Skordas, K., Argyraki, A. (2021): Tracing the sources of bioaccessible metal(loid)s in urban environments: A multidisciplinary approach. Science of the Total Environment, 771, p. 144827. doi.org/10.1016/j.scitotenv.2020.144827

Kypritidou, Z., Argyraki, A. (2020): Geochemical interactions in the trace element–soil–clay system of treated contaminated soils by Fe-rich clays. Environ Geochem Health, doi.org/10.1007/s10653-020-00542-1

Kypritidou, Z., Argyraki, A. (2018). A multi-site mechanism model for studying Pb and Cu retention from aqueous solutions by Fe-Mg-rich clays, Clay Minerals 53, p. 175-192, doi.org/10.1180/clm.2018.12

Koukouzas, N., Kypritidou, Z., Purser, G., Rochelle, C.A, Vasilatos, C., Tsoukalas, N. (2018): Assessment of the impact of CO2 storage in sandstone formations by experimental studies and geochemical modeling: The case of the Mesohellenic Trough, NW Greece, International Journal of Greenhouse Gas Control 71, pp. 116-132, doi.org/10.1016/j.ijggc.2018.01.016

Koukouzas, N., Kypritidou, Z., Vasilatos,, C., Tsoukalas, N., Rochelle C.A., Purser G. (2017): Geochemical modeling of carbonation of hydrated oil well cement exposed to CO2-saturated brine solution, Applied Geochemistry 85, pp. 35-48, doi.org/10.1016/j.apgeochem.2017.08.002

Leontakianakos, G., Baziotis, I., Stathopoulos, V. N., Kypritidou, Z., Profitis, L., Chatzitheodoridis, E., Tsimas, S. (2016): Influence of natural water composition on reactivity of quicklime derived from Ca-rich and Mg-rich limestone: Implications for sustainability of lime manufacturing through geochemical modeling, RSC Advances 6, 65799-65807, doi.org/10.1039/C6RA11346J

Leontakianakos, G., Baziotis, I., Stathopoulos, V. N., Kypritidou, Z., Profitis, L., Chatzitheodoridis, E., Tsimas, S. (2016): Influence of natural water composition on reactivity of quicklime derived from Ca-rich and Mg-rich limestone: Implications for sustainability of lime manufacturing through geochemical modeling, RSC Advances 6, 65799-65807, doi.org/10.1039/C6RA11346J